Functional defects in hiPSCs-derived cardiomyocytes from patients with a PLEKHM2-mutation associated with dilated cardiomyopathy and left ventricular non-compaction.

IF 4.3 2区 生物学 Q1 BIOLOGY Biological Research Pub Date : 2023-06-23 DOI:10.1186/s40659-023-00442-5
Nataly Korover, Sharon Etzion, Alexander Cherniak, Tatiana Rabinski, Aviva Levitas, Yoram Etzion, Rivka Ofir, Ruti Parvari, Smadar Cohen
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Abstract

Dilated cardiomyopathy (DCM) is a primary myocardial disease, leading to heart failure and excessive risk of sudden cardiac death with rather poorly understood pathophysiology. In 2015, Parvari's group identified a recessive mutation in the autophagy regulator, PLEKHM2 gene, in a family with severe recessive DCM and left ventricular non-compaction (LVNC). Fibroblasts isolated from these patients exhibited abnormal subcellular distribution of endosomes, Golgi apparatus, lysosomes and had impaired autophagy flux. To better understand the effect of mutated PLEKHM2 on cardiac tissue, we generated and characterized induced pluripotent stem cells-derived cardiomyocytes (iPSC-CMs) from two patients and a healthy control from the same family. The patient iPSC-CMs showed low expression levels of genes encoding for contractile functional proteins (α and β-myosin heavy chains and 2v and 2a-myosin light chains), structural proteins integral to heart contraction (Troponin C, T and I) and proteins participating in Ca2+ pumping action (SERCA2 and Calsequestrin 2) compared to their levels in control iPSC-derived CMs. Furthermore, the sarcomeres of the patient iPSC-CMs were less oriented and aligned compared to control cells and generated slowly beating foci with lower intracellular calcium amplitude and abnormal calcium transient kinetics, measured by IonOptix system and MuscleMotion software. Autophagy in patient's iPSC-CMs was impaired as determined from a decrease in the accumulation of autophagosomes in response to chloroquine and rapamycin treatment, compared to control iPSC-CMs. Impairment in autophagy together with the deficiency in the expression of NKX2.5, MHC, MLC, Troponins and CASQ2 genes, which are related to contraction-relaxation coupling and intracellular Ca2+ signaling, may contribute to the defective function of the patient CMs and possibly affect cell maturation and cardiac failure with time.

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与扩张型心肌病和左心室不充盈相关的 PLEKHM2 基因突变患者的 hiPSCs 衍生心肌细胞存在功能缺陷。
扩张型心肌病(DCM)是一种原发性心肌疾病,可导致心力衰竭和过高的心脏性猝死风险,其病理生理学尚不十分清楚。2015年,Parvari的研究小组在一个患有严重隐性DCM和左心室不充盈(LVNC)的家族中发现了自噬调节因子PLEKHM2基因的隐性突变。从这些患者体内分离出的成纤维细胞表现出异常的内体、高尔基体和溶酶体亚细胞分布,并且自噬通量受损。为了更好地了解突变的PLEKHM2对心脏组织的影响,我们从两名患者和来自同一家庭的一名健康对照者中生成了诱导多能干细胞衍生的心肌细胞(iPSC-CMs),并对其进行了表征。与对照组iPSC-CMs的水平相比,患者iPSC-CMs中编码收缩功能蛋白(α和β-肌球蛋白重链及2v和2a-肌球蛋白轻链)、心脏收缩不可或缺的结构蛋白(肌钙蛋白C、T和I)以及参与Ca2+泵作用的蛋白(SERCA2和Calsequestrin 2)的基因表达水平较低。此外,与对照细胞相比,患者iPSC-CMs的肌节定向和排列较差,并产生缓慢跳动的病灶,细胞内钙振幅较低,钙瞬态动力学异常。与对照iPSC-CMs相比,患者iPSC-CMs的自噬功能受损,这是由氯喹和雷帕霉素处理后自噬体积累减少所决定的。自噬功能受损,再加上与收缩-舒张偶联和细胞内 Ca2+ 信号转导有关的 NKX2.5、MHC、MLC、肌钙蛋白和 CASQ2 基因表达不足,可能导致患者 CMs 功能缺陷,并可能随着时间的推移影响细胞成熟和心功能衰竭。
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来源期刊
Biological Research
Biological Research 生物-生物学
CiteScore
10.10
自引率
0.00%
发文量
33
审稿时长
>12 weeks
期刊介绍: Biological Research is an open access, peer-reviewed journal that encompasses diverse fields of experimental biology, such as biochemistry, bioinformatics, biotechnology, cell biology, cancer, chemical biology, developmental biology, evolutionary biology, genetics, genomics, immunology, marine biology, microbiology, molecular biology, neuroscience, plant biology, physiology, stem cell research, structural biology and systems biology.
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